Wirelessly Powered Backscatter Communications: Waveform Design and SNR-Energy Tradeoff
March 08, 2017 Β· Declared Dead Β· π IEEE Communications Letters
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Authors
Bruno Clerckx, Zati Bayani Zawawi, Kaibin Huang
arXiv ID
1703.02798
Category
cs.IT: Information Theory
Cross-listed
cs.NI
Citations
47
Venue
IEEE Communications Letters
Last Checked
6 months ago
Abstract
This paper shows that wirelessly powered backscatter communications is subject to a fundamental tradeoff between the harvested energy at the tag and the reliability of the backscatter communication, measured in terms of SNR at the reader. Assuming the RF transmit signal is a multisine waveform adaptive to the channel state information, we derive a systematic approach to optimize the transmit waveform weights (amplitudes and phases) in order to enlarge as much as possible the SNRenergy region. Performance evaluations confirm the significant benefits of using multiple frequency components in the adaptive transmit multisine waveform to exploit the nonlinearity of the rectifier and a frequency diversity gain.
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